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RC Low-pass Filter Design Tool - Result -
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Calculated the Transfer Function for the RC Low-pass filter, displayed 
on graphs, showing Bode diagram, Nyquist diagram, Impulse response and 
Step response.
<br>



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<b>CR<br>Filter</b><br>
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<td>Vin(s)→</td>
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<td>→Vout(s)</td>
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Transfer Function:<br>
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<i>G</i>(<i>s</i>)=
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27777.7777778<hr size="1">
<i>s</i>+27777.7777778
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Cut-off frequency<br>
&nbsp;&nbsp;&nbsp;&nbsp;fc = 4420.97064144[Hz]<br>
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<legend><span>Rise/Fall time of step response</span></legend>
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&nbsp;&nbsp;&nbsp;&nbsp;R = <input name="rr" maxlength="50" size="15" value="360" type="text">Ω&nbsp;&nbsp;&nbsp;&nbsp;C = <input name="cc" maxlength="50" size="15" value="1.0E-7" type="text">F<br>
&nbsp;&nbsp;&nbsp;&nbsp;Stead-state value: <input name="st" maxlength="15" size="5" value="0" type="text">%→<input name="en" maxlength="15" size="5" value="90" type="text">%<br>
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Pole(s)<br>
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&nbsp;&nbsp;&nbsp;&nbsp;<i>p</i> = -4420.97064144[Hz]<br>
&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;&nbsp;|<i>p</i>|= 4420.97064144[Hz]<br>
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Phase margin<br><font face="Times New Roman">
&nbsp;&nbsp;&nbsp;&nbsp;<i>pm</i>= NAN[deg] (<i>f</i> =0[Hz])</font><br><br><br>
The system does not oscillate.<br>
<br><br>
Overshoot (in absolute value)<br>
The peak of transient waveform is not detected.<br>
<br><br>Final value of the step response (on the condition that the system converged when t goes to infinity)<br>
&nbsp;&nbsp;&nbsp;&nbsp;<font face="Times New Roman"><i>g</i></font>(∞) = 1<br>
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<td width="50%">R=<input name="p1" maxlength="15" size="9" value="360" type="text">Ω</td>
<td width="50%">C=<input name="p2" maxlength="15" size="9" value="0.1u" type="text">F</td>
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p:pico, n:nano, u:micro, k:kilo, M:mega
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<legend><span>Frequency analysis</span></legend>
<input name="fa1" checked="checked" type="checkbox">Bode diagram<br>
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<input name="ta4" checked="checked" type="checkbox">Final value of the step response<br>
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Frequency analysis
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Transient analysis
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